Argyrodite– tag –
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Solid-State Batteries
Solid-State Battery Progress Accelerates: Xinyuren Trials Gen 2 Halide Electrolyte, Easpring Scales Sulfide Production, Dongfeng Plans 350 Wh/kg Hybrid EV Launch
Solid-State Battery Weekly China Overview The solid-state battery sector is witnessing rapid advancements, with Xinyuren successfully piloting its second-generation halide solid electrolyte and Easpring achieving large-scale production o... -
Solid-State Batteries
Surface Oxidation Strategy Dramatically Boosts Air and Long-Term Cycling Stability of Sulfide Solid Electrolyte Li6PS5Cl, Advancing All-Solid-State Battery Practicality
Royal Society of Chemistry UK Overview New research presents a surface oxidation strategy for the sulfide solid electrolyte Li6PS5Cl, successfully forming a core-shell structure that significantly enhances air stability and long-term cyc... -
Solid-State Batteries
Comprehensive Analysis of All-Solid-State Batteries: Detailing Interface Resistance and Solid Electrolyte Advancements
IEST Instrument China Overview A review by IEST Instrument comprehensively analyzes the status and challenges of all-solid-state batteries (ASSBs), focusing on solid electrolytes. It categorizes polymer, inorganic (oxide, sulfide), and o... -
Solid-State Batteries
J&K Scientific Compares Solid Electrolytes for All-Solid-State Batteries: Analyzing Superiority of Sulfide and Oxide Systems
J&K Scientific China Overview J&K Scientific's article compares the key properties of sulfide and oxide electrolytes, two leading candidates for solid electrolytes in all-solid-state batteries. Sulfide electrolytes offer high ionic c... -
Solid-State Batteries
Darcy & Roy Press Reviews Challenges and Opportunities in All-Solid-State Electrolytes: Comparing Oxides, Sulfides, Polymers, and Composites
Darcy & Roy Press Unknown Overview A paper by Darcy & Roy Press comprehensively reviews the material properties, performance advantages, key issues, and improvement strategies for oxide, sulfide, polymer, and composite solid electrol... -
Solid-State Batteries
All-Solid-State Battery with Si-Doped Argyrodite Li6+xSixSb1-xS5I Electrolyte Demonstrates Stable Operation from -20°C to 60°C
arXiv Unknown Overview Researchers have developed an all-solid-state battery combining a Si-doped antimony argyrodite Li6+xSixSb1-xS5I electrolyte with an LiNbO3-coated LiNi0.7Co0.1Mn0.2O2 cathode, demonstrating stable cycling performanc... -
Solid-State Batteries
Ultrathin Li3YCl6-Based Coatings Enable High-Areal-Capacity All-Solid-State Batteries with Improved NMC811 Cathode Cycling Performance
Chemistry of Materials (ACS Publications) USA Overview Researchers synthesized nanometer-thick Li3YCl6-based coatings on NMC811 cathodes via liquid-phase deposition and low-temperature annealing to suppress interfacial side reactions wit... -
Solid-State Batteries
Sulfide All-Solid-State Batteries Achieve 1.54 mS/cm Ionic Conductivity, 120 mAh/g Initial Capacity, and 97% Retention over 50 Cycles via Three-Stage Pressure Optimization
IEST Instrument Unknown Overview Research by Yan et al. (Journal of Colloid and Interface Science, 2026) presented a three-stage pressure optimization protocol for assembling sulfide all-solid-state batteries: electrolyte pre-pressing (3... -
Solid-State Batteries
CATL’s Sulfide All-Solid-State Battery Achieves Liquid Electrolyte-Level Ionic Conductivity at Room Temperature, Stable from -40°C to 100°C with 6C Charging
YouTube China Overview CATL's sulfide all-solid-state battery (argyrodite Li₆PS₅Cl) has reportedly achieved ionic conductivity comparable to liquid electrolytes (10-25 mS/cm) at room temperature. This battery is also stated to operate st... -
Solid-State Batteries
Oxygen Introduction in Sulfide Solid Electrolytes: Stabilizing Interfaces While Maintaining Lithium Ion Conduction for Next-Gen Batteries
EurekAlert! USA Overview New research demonstrates that carefully introducing oxygen into sulfide-based solid electrolytes can stabilize unstable interfaces while preserving high lithium ion conductivity. By using lithium sulfate (Li₂SO₄...
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